Hygienic Monitoring of Working Area Air Pollution by Particulate Matter of ticagrelator in the Pharmaceutical Factory

Introduction. Hygienic monitoring of air pollution at the pharmaceutical enterprise required by the law of the Russian Federation (orders, standards, methodological guidelines and guidelines). This requirement follows from the need to protect the personnel of the pharmaceutical plant from the advers...

Full description

Bibliographic Details
Main Authors: I. A. Pozharnov, A. S. Simakov, N. A. Shulga, A. Yu. Savchenko, O. I. Perederyaev, L. S. Synkova, Yu. V. Medvedev, E. N. Fisher
Format: Article
Language:Russian
Published: LLC Center of Pharmaceutical Analytics (LLC «CPHA») 2022-05-01
Series:Разработка и регистрация лекарственных средств
Subjects:
Online Access:https://www.pharmjournal.ru/jour/article/view/1229
_version_ 1797874881530953728
author I. A. Pozharnov
A. S. Simakov
N. A. Shulga
A. Yu. Savchenko
O. I. Perederyaev
L. S. Synkova
Yu. V. Medvedev
E. N. Fisher
author_facet I. A. Pozharnov
A. S. Simakov
N. A. Shulga
A. Yu. Savchenko
O. I. Perederyaev
L. S. Synkova
Yu. V. Medvedev
E. N. Fisher
author_sort I. A. Pozharnov
collection DOAJ
description Introduction. Hygienic monitoring of air pollution at the pharmaceutical enterprise required by the law of the Russian Federation (orders, standards, methodological guidelines and guidelines). This requirement follows from the need to protect the personnel of the pharmaceutical plant from the adverse air conditions of the working area, which may contain suspended solids of active pharmaceutical ingredient (API). Despite the use of breathing equipment by staff and occupational safety requirements, the risk to workers should be minimized by regular assessment of air pollution.Aim. The purpose of the stady is to carry out hygienic monitoring of working area air tikagrelor – API of the medicinal preparation Brilinta®.Materials and methods. The subject of this research is API ticagrelor including air and flush samples from the surface of LLC «AstraZenica Industries», collected during the production of the consignment of Brilinta® (MNN – ticagrelor). Air samples of the working area were collected using air intake systems of type "IOM Sampler", using both personal and stationary systems. Flushing from the surface is done by template v printing using cotton swaps. Sampling points selected to cover. All stages of the production cycle. Subsequently, the quantification of ticagrelor in samples was carried out by the method of high-efficiency liquid chromatography with UV detection (HPLC-UV).Results and discussions. The quantitative determination showed that 4 air samples and 25 surface fluxes exceeding the allowable content of ticagrelor. Each sample was related to the time and place of sampling, and assumptions were made as to why the sample points exceeded the standard values.Conclusion. At the pharmaceutical enterprise we have carried out hygienic monitoring of the working area air for the content of API ticagrelor. The results of the measurements were obtained and processed, on the basis of which measures were proposed to reduce the concentration of ticagrelor in the air in order to protect personnel from the adverse effects of the work area. These measures include optimization of process operations and/or training of personnel in new approaches to the operation and cleaning of equipment.
first_indexed 2024-04-10T01:39:03Z
format Article
id doaj.art-5397b2835c6540e3bf3a39e2f88033cd
institution Directory Open Access Journal
issn 2305-2066
2658-5049
language Russian
last_indexed 2024-04-10T01:39:03Z
publishDate 2022-05-01
publisher LLC Center of Pharmaceutical Analytics (LLC «CPHA»)
record_format Article
series Разработка и регистрация лекарственных средств
spelling doaj.art-5397b2835c6540e3bf3a39e2f88033cd2023-03-13T09:14:03ZrusLLC Center of Pharmaceutical Analytics (LLC «CPHA»)Разработка и регистрация лекарственных средств2305-20662658-50492022-05-0111215315810.33380/2305-2066-2022-11-2-153-158967Hygienic Monitoring of Working Area Air Pollution by Particulate Matter of ticagrelator in the Pharmaceutical FactoryI. A. Pozharnov0A. S. Simakov1N. A. Shulga2A. Yu. Savchenko3O. I. Perederyaev4L. S. Synkova5Yu. V. Medvedev6E. N. Fisher7ФГАОУ ВО Первый МГМУ им. И. М. Сеченова Минздрава России (Сеченовский университет)ФГАОУ ВО Первый МГМУ им. И. М. Сеченова Минздрава России (Сеченовский университет)ФГАОУ ВО Первый МГМУ им. И. М. Сеченова Минздрава России (Сеченовский университет)ФГАОУ ВО «Национальный исследовательский ядерный университет «МИФИ» (НИЯУ МИФИ)ФГАОУ ВО Первый МГМУ им. И. М. Сеченова Минздрава России (Сеченовский университет)ФГАОУ ВО Первый МГМУ им. И. М. Сеченова Минздрава России (Сеченовский университет); ООО «Центр Фармацевтической Аналитики» (ООО «ЦФА»)ФГАОУ ВО Первый МГМУ им. И. М. Сеченова Минздрава России (Сеченовский университет); ООО «Центр Фармацевтической Аналитики» (ООО «ЦФА»)ФГАОУ ВО Первый МГМУ им. И. М. Сеченова Минздрава России (Сеченовский университет); ООО «Центр Фармацевтической Аналитики» (ООО «ЦФА»)Introduction. Hygienic monitoring of air pollution at the pharmaceutical enterprise required by the law of the Russian Federation (orders, standards, methodological guidelines and guidelines). This requirement follows from the need to protect the personnel of the pharmaceutical plant from the adverse air conditions of the working area, which may contain suspended solids of active pharmaceutical ingredient (API). Despite the use of breathing equipment by staff and occupational safety requirements, the risk to workers should be minimized by regular assessment of air pollution.Aim. The purpose of the stady is to carry out hygienic monitoring of working area air tikagrelor – API of the medicinal preparation Brilinta®.Materials and methods. The subject of this research is API ticagrelor including air and flush samples from the surface of LLC «AstraZenica Industries», collected during the production of the consignment of Brilinta® (MNN – ticagrelor). Air samples of the working area were collected using air intake systems of type "IOM Sampler", using both personal and stationary systems. Flushing from the surface is done by template v printing using cotton swaps. Sampling points selected to cover. All stages of the production cycle. Subsequently, the quantification of ticagrelor in samples was carried out by the method of high-efficiency liquid chromatography with UV detection (HPLC-UV).Results and discussions. The quantitative determination showed that 4 air samples and 25 surface fluxes exceeding the allowable content of ticagrelor. Each sample was related to the time and place of sampling, and assumptions were made as to why the sample points exceeded the standard values.Conclusion. At the pharmaceutical enterprise we have carried out hygienic monitoring of the working area air for the content of API ticagrelor. The results of the measurements were obtained and processed, on the basis of which measures were proposed to reduce the concentration of ticagrelor in the air in order to protect personnel from the adverse effects of the work area. These measures include optimization of process operations and/or training of personnel in new approaches to the operation and cleaning of equipment.https://www.pharmjournal.ru/jour/article/view/1229гигиенический мониторингвоздух рабочей зонытикагрелорвэжх-уф
spellingShingle I. A. Pozharnov
A. S. Simakov
N. A. Shulga
A. Yu. Savchenko
O. I. Perederyaev
L. S. Synkova
Yu. V. Medvedev
E. N. Fisher
Hygienic Monitoring of Working Area Air Pollution by Particulate Matter of ticagrelator in the Pharmaceutical Factory
Разработка и регистрация лекарственных средств
гигиенический мониторинг
воздух рабочей зоны
тикагрелор
вэжх-уф
title Hygienic Monitoring of Working Area Air Pollution by Particulate Matter of ticagrelator in the Pharmaceutical Factory
title_full Hygienic Monitoring of Working Area Air Pollution by Particulate Matter of ticagrelator in the Pharmaceutical Factory
title_fullStr Hygienic Monitoring of Working Area Air Pollution by Particulate Matter of ticagrelator in the Pharmaceutical Factory
title_full_unstemmed Hygienic Monitoring of Working Area Air Pollution by Particulate Matter of ticagrelator in the Pharmaceutical Factory
title_short Hygienic Monitoring of Working Area Air Pollution by Particulate Matter of ticagrelator in the Pharmaceutical Factory
title_sort hygienic monitoring of working area air pollution by particulate matter of ticagrelator in the pharmaceutical factory
topic гигиенический мониторинг
воздух рабочей зоны
тикагрелор
вэжх-уф
url https://www.pharmjournal.ru/jour/article/view/1229
work_keys_str_mv AT iapozharnov hygienicmonitoringofworkingareaairpollutionbyparticulatematterofticagrelatorinthepharmaceuticalfactory
AT assimakov hygienicmonitoringofworkingareaairpollutionbyparticulatematterofticagrelatorinthepharmaceuticalfactory
AT nashulga hygienicmonitoringofworkingareaairpollutionbyparticulatematterofticagrelatorinthepharmaceuticalfactory
AT ayusavchenko hygienicmonitoringofworkingareaairpollutionbyparticulatematterofticagrelatorinthepharmaceuticalfactory
AT oiperederyaev hygienicmonitoringofworkingareaairpollutionbyparticulatematterofticagrelatorinthepharmaceuticalfactory
AT lssynkova hygienicmonitoringofworkingareaairpollutionbyparticulatematterofticagrelatorinthepharmaceuticalfactory
AT yuvmedvedev hygienicmonitoringofworkingareaairpollutionbyparticulatematterofticagrelatorinthepharmaceuticalfactory
AT enfisher hygienicmonitoringofworkingareaairpollutionbyparticulatematterofticagrelatorinthepharmaceuticalfactory